Process development and thermodynamic, environmental, and economic assessments of a novel co-feed multigeneration arrangement using coke oven gas and geothermal energy

被引:0
作者
Li, Bingxin [1 ]
Yang, Xiaojing [2 ]
Mao, Xuezhi [2 ]
机构
[1] Hebei Normal Univ Sci & Technol, Coll Urban Construct, Qin Huangdao 066004, Peoples R China
[2] Hebei Normal Univ Sci & Technol, Coll Math & Informat Sci, Qin Huangdao 066004, Peoples R China
关键词
Co-feed multigeneration; Coke oven gas; Geothermal energy; Aspen HYSYS; Economic analysis; CO2; emission; RANKINE-CYCLE ORC; FUEL-CELL; POLYGENERATION SYSTEM; TRIGENERATION SYSTEM; METHANOL PRODUCTION; POWER-PLANT; OPTIMIZATION; PERFORMANCE; DRIVEN; ELECTRICITY;
D O I
10.1016/j.energy.2025.137111
中图分类号
O414.1 [热力学];
学科分类号
摘要
The present research shows the feasibility of an integrated co-feed multigeneration process, which utilizes both coke oven gas and geothermal energy and delves into its investigation. The recently developed system includes numerous interconnected components, namely a COG-fed power and heat generation unit, a dual organic Rankine cycle unit, a single flash power unit, a multi-effect desalination unit, an absorption chiller unit, an ammonia Rankin cycle unit, and a hydrogen generation unit. The present work employs the Aspen HYSYS simulation software to model the aforementioned process, and subsequent analyses are conducted in the domains of exergy, energy, economics, and environment. The findings are juxtaposed with analogous investigations. Based on the simulation, the proposed structure can produce 297900 kW of power, 2148 "kg/s" of domestic hot water, 35.61 "kg/s" of chilled water, 0.56 "kg/s" of hydrogen, 4.431 "kg/s" of oxygen, and 129 "kg/s" of fresh water. According to the outcomes, the total unit cost of the product, cost of energy for this newly developed process, exergy efficiency, and overall energy efficiency are 18.415 $/GJ, 0.253 $/kWh, 42.05%, and 43.35%, respectively. The entire amount of exergy destruction is 946,593 kW, and the single flash power unit has the highest exergy destruction rate with a share of 53 %, equivalent to 497453 kW. The environmental investigation demonstrates that the entire direct emissions of carbon dioxide for the process is 209786.76 kg/h and the carbon dioxide net emission is 197799.34 kg/h. Moreover, the net specific carbon dioxide emission is calculated to be 0.23 kgCO2/kWh.
引用
收藏
页数:24
相关论文
共 70 条
[11]   Thermo-economic evaluation of a combined Kalina cycle and humidification-dehumidification (HDH) desalination system integrated with thermoelectric generator and solar pond [J].
Cao, Yan ;
Dhahad, Hayder A. ;
Parikhani, Towhid ;
Anqi, Ali E. ;
Mohamed, Abdeliazim Mustafa .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2021, 168
[12]   Simulation and thermodynamic, economic, and environmental analyses of a novel multigeneration arrangement fueled by coke oven gas equipped with a desalination process [J].
Chen, Ziyue ;
Wu, Song lin ;
Pang, Te ;
Xiao, Fuxin .
DESALINATION, 2025, 597
[13]   Design and evaluation of a novel multi-generation system based on SOFC-GT for electricity, fresh water and hydrogen production [J].
Chitgar, Nazanin ;
Moghimi, Mahdi .
ENERGY, 2020, 197
[14]   Parametric optimization and comparative study of organic Rankine cycle (ORC) for low grade waste heat recovery [J].
Dai, Yiping ;
Wang, Jiangfeng ;
Gao, Lin .
ENERGY CONVERSION AND MANAGEMENT, 2009, 50 (03) :576-582
[15]   Optimization of Coke Oven Gas Desulfurization and Combined Cycle Power Plant Electricity Generation [J].
Deng, Lingyan ;
Adams, Thomas A., II .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2018, 57 (38) :12816-12828
[16]   Design, analysis, and optimization of a novel poly-generation system powered by solar and wind energy [J].
Esmaeilion, Farbod ;
Soltani, M. ;
Nathwani, Jatin ;
Al-Haq, Armughan .
DESALINATION, 2022, 543
[17]   Performance investigation of a power, heating and seawater desalination poly-generation scheme in an off-shore oil field [J].
Eveloy, Valerie ;
Rodgers, Peter ;
Qiu, Linyue .
ENERGY, 2016, 98 :26-39
[18]   The Demand for Energy-Using Assets among the World's Rising Middle Classes [J].
Gertler, Paul J. ;
Shelef, Orie ;
Wolfram, Catherine D. ;
Fuchs, Alan .
AMERICAN ECONOMIC REVIEW, 2016, 106 (06) :1366-1401
[19]   Introducing a hybrid renewable energy system for production of power and fresh water using parabolic trough solar collectors and LNG cold energy recovery [J].
Ghorbani, Bahram ;
Mahyari, Kimiya Borzoo ;
Mehrpooya, Mehdi ;
Hamedi, Mohammad-Hossein .
RENEWABLE ENERGY, 2020, 148 :1227-1243
[20]   An intelligent thermodynamic/economic approach based on artificial neural network combined with MOGWO algorithm to study a novel polygeneration scheme using a modified dual-flash geothermal cycle [J].
Haghghi, Maghsoud Abdollahi ;
Hasanzadeh, Amirhossein ;
Nadimi, Ebrahim ;
Rosato, Antonio ;
Athari, Hassan .
PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2023, 173 :859-880